Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
152
datasets available to search
ShareScore release 0.9.0
Dataset results
152 results for “Pleistocene to Holocene”
Figures 2-3 from: Courtney Mustaphi CJ, Githumbi EN, Shotter LR, Rucina SM, Marchant R (2016) Subfossil statoblasts of Lophopodella capensis (Sollas, 1908) (Bryozoa, Phylactolaemata, Lophopodidae) in the Upper Pleistocene and Holocene sediments of a montane wetland, Eastern Mau Forest, Kenya. African Invertebrates 57(1): 39-52. https://doi.org/10.3897/afrinvertebr.57.8191
Figures 2-3 - An wide angle aerial oblique photograph of Enapuiyapui wetland from the northwest facing southeast (2). Coring the center of the Cyperaceae-Poaceae wetland, April 2014 (3).
Fig. 6 in Ponto-Caspian And Mediterranean Faunal And Floral Records Of Upper Pleistocene-Holocene Sediments From The İzmit Gulf (Marmara Sea, Turkey)
Fig. 6 Scanning electron micrographs of selected benthic foraminiferal species identified from the İzmit Gulf drilling cores. a. Cassidulina carinata, 206/33 m. b. Cibicidoides lobatulus, 206/37.5 m: b1, spiral view; b2, umbilical view. c. Cribroelphidium gerthi, 208/1 m: c1, side view; c2, apertural edge view. d. Cribroelphidium poeyanum, 207/31 m: d1, side view; d2, apertural edge view. e. Cribroelphidium poeyanum, 208/9 m. f. Cycloforina villafranca, 208/1 m. g. Discorbinella bertheloti, 205/1.5 m: g1, spiral view; g2, umbilical view. h. Elphidium aculeatum, 208/18 m. i. Elphidium crispum, 208/1 m. j. Elphidium crispum, 206/41 m. k. Elphidium macellum, 207/22.75 m. l. Elphidium macellum, 206/41 m. m. Elphidium punctatum, 208/1 m: m1, side view; m2, apertural edge view. n. Elphidium sp. 208/1 m. o. Eponides concameratus, 206/41 m: o1, spiral view; o2, umbilical view.
Fig. 9 in Ponto-Caspian And Mediterranean Faunal And Floral Records Of Upper Pleistocene-Holocene Sediments From The İzmit Gulf (Marmara Sea, Turkey)
Fig. 9 Scanning electron micrographs of selected benthic foraminiferal species identified from the İzmit Gulf drilling cores. Three planktic species rarely observed in the drillings are illustrated in m, n and o. a. Sigmoilopsis schlumbergeri, 201/1 m. b. Siphonaperta sp., 208/5. c. Spirophthalmidium tenuiseptatum, 201/1 m. d. Stomatorbina concentrica, 207/5 m. e. Textularia aglutinans, 208/9 m. f. Textularia calva, 201/1 m. g. Textularia pala, 205/1.5 m. h. Textularia sagittula, 201/1 m. i. Triloculina marioni, 207/1 m. j. Triloculina plicata, 208/1 m. k. Triloculina tricarinata, 205/1.5 m. l. Valvulineria bradyana, 206/37.5 m: l1, spiral view; l2, umbilical view. m. Globigerina bulloides, 207/22 m. n. Globigerinoides ruber, 201/1 m. o. Turborotalita quinqueloba, 201/1 m.
Figure 1 in An extremely large saber-tooth cat skull from Uruguay (late Pleistocene -early Holocene, Dolores Formation): body size and paleobiological implications
Figure 1. Map of Uruguay showing the approximate geographic location where the Smilodon populator skull (MNHN-P 957) was found (black triangle): Limetas Creek (Department of Colonia), Dolores Formation.
FIGURES 184–189 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 184–189. Conescharellina cf. angustata d'Orbigny, 1852. 184–186. RGM.1350599, Holocene, UPGG041, off South Sulawesi. 184. General view of a colony. 185. General view of the adapical surface. 186. General view of the antapical surface. 187, 188. RGM.1350598, early Pleistocene, Java. 187. General view of a colony with well-developed peristomes. 188. Close-up of alternating series of autozooids and avicularia. 189. RGM.1350600, Holocene, Java. Cross section of a colony showing the core of small kenozooids. Scale bars: Figs 184–186, 189 = 200 µm; Fig. 187 = 300 µm; Fig. 188 = 100 µm.
FIGURES 190–192. Conescharellina angustata d in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 190–192. Conescharellina angustata d'Orbigny, 1852, Recent, Ile de Basilan, holotype MNHN d'Orbigny Colln 13679. 190. General view of a colony. 191. Close-up of alternating series of autozooids and avicularia. 192. General view of the adapical surface. Scale bars: Figs 190, 192 = 200 µm; Fig. 191 = 50 µm.
FIGURES 171–176 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 171–176. Triphyllozoon cf. benemunitum (Hastings, 1932), Holocene, UPGG041, off South Sulawesi. 171–173. RGM.1350593. 171. General view of a colony fragment. 172. Close-up of an autozooid and cuspate fenestral avicularium. 173. Close-up of a broken ooecium, showing the trilobate sutures with the lateral branches diverging at 180˚, and the primary orifice with notch. 174, 175. RGM.1350594. 174. Group of zooids with numerous frontal avicularia. 175. Abfrontal surface with numerous, polymorphic avicularia. 176. RGM.1350595, close-up of an ooecium with the median suture shorter than the lateral ones. Scale bars: Figs 171, 174, 175 = 200 µm; Figs 172, 173, 176 = 50 µm.
FIGURES 110–112 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 110–112. Calyptotheca triquetra (Harmer, 1957), RGM.1350570, Holocene, UPGG041, off South Sulawesi. 110. View of the colony encrusting the dorsal side of a Triphyllozoon fragment. 111. Close-up of three zooids, one of which is ovicellate. 112. Close-up of zooids with vertical and obliquely directed suboral avicularia of different sizes. Scale bars: Fig. 110 = 200 µm; Figs 111, 112 = 100 µm.
FIGURES 77–80 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 77–80. Parasmittina galerita Ryland & Hayward, 1992, RGM.1350563, Holocene, UPGG041, off South Sulawesi. 77. General view of the colony fragment. The arrow indicates a spatulate vicarious avicularium. 78. Group of zooids with polymorphic avicularia. 79. Group of zooids with ooecia. 80. Close-up of an orifice showing the anvil-shaped lyrula, the pleated condyles, and a single oral spine base. Scale bars: Fig. 77 = 200 µm; Figs 78, 79 = 100 µm; Fig. 80 = 20 µm.
FIGURES 71–76 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 71–76. Parasmittina agathae Hayward & Parker, 1994, RGM.1350562, Holocene, UPGG041, off South Sulawesi. 71. General view of the colony fragment. 72. Group of zooids with small oval and large spatulate avicularia, and broken ooecium. 73. Close-up of a large spatulate avicularium. 74. Close-up of an orifice with two distal oral spine bases, denticulate distal edge and laterally prominent peristome. 75. Close-up of a zooid with a small spatulate avicularium. 76. Close-up of a zooid with a steeply inclined, small triangular avicularium on the distolateral corner. Scale bars: Fig. 71 = 500 µm; Fig. 72 = 200 µm; Figs 73–75 = 50 µm; Fig. 76 = 100 µm.
FIGURES 58–61 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 58–61. Celleporaria aperta (Hincks, 1882), RGM.1350558, Holocene, UPGG041, off South Sulawesi. 58. Group of zooids and interzooidal avicularia variable in size and shape of the rostrum. 59. Close-up of an ovicellate zooid, an interzooidal avicularium with spatulate rostrum, and an adventitious avicularium; both avicularia show the characteristic dentate tip, although abraded. 60. Close-up of an orifice with two oral spine bases and broken suboral avicularium; a single condyle is preserved. 61. Close-up of an interzooidal avicularium with lanceolate rostrum and crossbar preserved. Scale bars: Fig. 58 = 200 µm; Fig. 59 = 100 µm; Figs 60, 61 = 50 µm.
FIGURES 47–52 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 47–52. Adeonella intricaria (Busk, 1884), syntype, Recent, Challenger Expedition, Station 190 (8˚56'S; 136˚5'E), NHMUK 1899.7.1.2519. 47. View of a branch fragment. 48. Group of autozooids with frontal avicularia and fertile zooids. 49. Close-up of a lateral triangular vicarious avicularium with sealed opening. 50. Close-up of a lateral triangular vicarious avicularium with intramural budding. 51. Autozooids with long and acute frontal avicularia. 52. Close-up of two fertile zooids at the peripheral margin of the branch. Scale bars: Fig. 47 = 500 µm; Figs 48–51 = 200 µm; Fig. 52 = 100 µm.
FIGURES 130–132. Mucropetraliella loculifera Harmer, 1957, RGM.1350578 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 130–132. Mucropetraliella loculifera Harmer, 1957, RGM.1350578, Holocene, UPGG041, off South Sulawesi. 130. View of the colony fragment. 131. Group of zooids with various adventitious avicularia; note the pointed suboral mucro in the central placed zooid with the zooid immediately below having two small, oral spine bases and a median denticle within the orifice, as well as an occlusor-lamina on the right-hand side of the orifice; occlusor-laminae are visible also on the zooids placed on the right-hand side of the image. 132. Close-up of an occlusor-lamina. Scale bars: Fig. 130 = 500 µm; Fig. 131 = 200 µm; Fig. 132 = 100 µm.
FIGURES 45, 46 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 45, 46. Adeonella lichenoides (Lamarck, 1816), syntype of Adeonella platalea (Busk, 1854), Recent, off Cape Capricorn (Queensland), NHMUK 1854.11.15.185. Group of autozooids and rounded vicarious avicularium. 46. Close-up of an autozooid and a vicarious avicularium. Scale bars: Fig. 45 = 400 µm; Fig. 46 = 100 µm.
FIGURES 120–123 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 120–123. Porina australiensis (Haswell, 1880), Recent, Australia, Challenger Expedition (Busk 1884, pl. 24, fig. 9a), Station 186 (10˚30'S; 142˚18'E), coral sand, NHMUK 87.12.9.700. 120. General view of a dichotomously branched fragment. 121. Group of autozooids. 122. Close-up of peristome bearing a pair of small avicularia. 123. Close-up of a broken peristome. Scale bars: Fig. 120 = 1 mm; Fig. 121 = 400 µm; Figs 122, 123 = 100 µm.
FIGURES 41–44 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 41–44. Adeonella cf. lichenoides (Lamarck, 1816), RGM.1350555, Holocene, UPGG041, off South Sulawesi. 41. View of a branch fragment. 42. Group of autozooids with frontal avicularia and sealed orifice. 43. Group of zooids with suboral avicularium and tubercle on the frontal shield. 44. Close-up of a lateral subtriangular vicarious avicularium. Scale bars: Fig. 41 = 1 mm; Fig. 42 = 200 µm; Figs 43, 44 = 100 µm.
FIGURES 33, 34 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 33, 34. Poricella celleporoides (Busk, 1884), RGM.1350553, Holocene, UPGG041, off South Sulawesi. 33. View of the colony fragment. 34. Close-up of an autozooid with bipartite foramen and an interzooidal avicularium. Scale bars: Fig. 33 = 200 µm; Fig. 34 = 100 µm.
FIGURES 29–32 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 29–32. Licornia sp., RGM.1350552, Holocene, UPGG041, off South Sulawesi. 29. View of the half internode. 30. Close-up of an autozooid with incomplete ooecium, scutum base, distolateral avicularium and vibraculum in frontal view. 31. Close-up of a zooid with a putative frontal avicularium. 32. Close-up of the vibracular chamber on the dorsal side. Scale bars: Fig. 29 = 500 µm; Figs 30–32 = 100 µm.
FIGURES 23, 24. Setosellina constricta Harmer, 1926 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 23, 24. Setosellina constricta Harmer, 1926, Recent, Malay Archipelago. 23. NHMUK 1928.3.6.75 (part of type material), Siboga Expedition Station 77 (59 m depth), Borneo Bank, Makassar Strait, young colony with opercula and setae. 24. NHMUK 1928.3.6.76, Siboga Expedition Station 102 (18 m depth), off Loslos Island, north end of New Guinea, general view of a colony with ancestrula (An) and associated periancestrular vibracula. Scale bars: 200 µm.
FIGURES 19–22. Setosellina constricta Harmer, 1926 in Early Pleistocene and Holocene bryozoans from Indonesia
FIGURES 19–22. Setosellina constricta Harmer, 1926, Holocene, UPGG041, off South Sulawesi. 19, 20. RGM.1350548. 19. General view of a colony encrusting a sediment grain. 20. Close-up of part of the colony, including ancestrula (An), periancestrular vibracula and zooids, and intramural buds in some zooids. 21. RGM.1350549, group of zooids and associated vibracula, two of which with intramural buds. 22. RGM.1350550, marginal kenozooids on the underside of the substrate. Scale bars: Fig. 19 = 500 µm; Figs 20–22 = 200 µm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.